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Distinct regulatory elements control muscle-specific fiber-type-selective and axially graded expression of a myosin light-chain gene in transgenic mice.

机译:不同的调控元件控制转基因小鼠中肌球蛋白轻链基因的肌肉特异性纤维类型选择性和轴向分级表达。

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摘要

The fast alkali myosin light chain 1f/3f (MLC1f/3f) gene is developmentally regulated, muscle specific, and preferentially expressed in fast-twitch fibers. A transgene containing an MLC1f promoter plus a downstream enhancer replicates this pattern of expression in transgenic mice. Unexpectedly, this transgene is also expressed in a striking (approximately 100-fold) rostrocaudal gradient in axial muscles (reviewed by J. R. Sanes, M. J. Donoghue, M. C. Wallace, and J. P. Merlie, Cold Spring Harbor Symp. Quant. Biol. 57:451-460, 1992). Here, we analyzed the expression of mutated transgenes to map sites necessary for muscle-specific, fiber-type-selective, and axially graded expression. We show that two E boxes (myogenic factor binding sites), a homeodomain (hox) protein binding site, and an MEF2 site, which are clustered in an approximately 170-bp core enhancer, are all necessary for maximal transgene activity in muscle but not for fiber-type- or position-dependent expression. A distinct region within the core enhancer promotes selective expression of the transgene in fast-twitch muscles. Sequences that flank the core enhancer are also necessary for high-level activity in transgenic mice but have little influence on activity in transfected cells, suggesting the presence of regions resembling matrix attachment sites. Truncations of the MLC1f promoter affected position-dependent expression of the transgene, revealing distinct regions that repress transgene activity in neck muscles and promote differential expression among intercostal muscles. Thus, the whole-body gradient of expression displayed by the complete transgene may reflect the integrated activities of discrete elements that regulate expression in subsets of muscles. Finally, we show that transgene activity is not significantly affected by deletion or overexpression of the myoD gene, suggesting that intermuscular differences in myogenic factor levels do not affect patterns of transgene expression. Together, our results provide evidence for at least nine distinct sites that exert major effects on the levels and patterns of MLC1f expression in adult muscles.
机译:快速碱性肌球蛋白轻链1f / 3f(MLC1f / 3f)基因受发育调节,肌肉特异性,并优先在快速抽动纤维中表达。含有MLC1f启动子和下游增强子的转基因可在转基因小鼠中复制这种表达方式。出乎意料的是,该转基因还以轴向肌肉中惊人的(大约100倍)杆状尾骨梯度表达(JR Sanes,MJ Donoghue,MC Wallace和JP Merlie综述,冷泉港Symp。Quant。Biol。57:451- 460,1992)。在这里,我们分析了突变转基因的表达,以定位肌肉特异性,纤维类型选择性和轴向分级表达所必需的位点。我们显示两个E框(肌原性因子结合位点),一个同源域(hox)蛋白结合位点和一个MEF2位点,它们聚集在大约170 bp的核心增强子中,都是肌肉中最大转基因活性所必需的,但不是用于依赖于纤维类型或位置的表达。核心增强子中的一个独特区域可促进转基因在快肌中的选择性表达。侧翼核心增强子的序列对于转基因小鼠的高水平活性也是必需的,但对转染细胞中的活性几乎没有影响,表明存在类似于基质附着位点的区域。 MLC1f启动子的截短影响转基因的位置依赖性表达,揭示了抑制颈部肌肉中转基因活性并促进肋间肌肉之间差异表达的不同区域。因此,完整转基因显示的全身表达梯度可能反映了调节肌肉子集中表达的离散元件的整合活动。最后,我们显示出转基因活性不受myoD基因缺失或过表达的显着影响,表明肌源性因子水平的肌间差异不会影响转基因表达的模式。在一起,我们的结果为至少九个不同的部位提供证据,这些部位对成年肌肉中MLC1f表达的水平和模式产生重大影响。

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